Abstract

A rapid purification procedure produces milligram amounts of the T7 gene 4A' primase/helicase, 4B helicase, and the wild-type 4AB proteins expressed from the clones described in the accompanying paper (Rosenberg, A. H., Patel, S. S., Johnson, K. A., and Studier, F. W. (1992) J. Biol. Chem. 267, 15005-15012). Purified 4A' protein (in which the wild-type methionine at amino acid 64 has been replaced by leucine to eliminate the 4B initiation codon) appears to be equivalent to the wild-type 4A protein in primase, helicase, and NTPase activities. Gel filtration chromatography and polyacrylamide gel electrophoresis of native proteins indicate that the 4A' and 4B proteins form homodimers and heterodimers in solution. Heterodimer formation presumably accounts for an observed 3-fold increase in the primase activity of 4A' upon addition of 4B that lacks primase activity of its own. Steady-state k(cat) and Km values for hydrolysis of the nucleoside triphosphates ATP, dATP, dTTP, and dGTP were measured for 4A', 4B, 4A'B (1:1), and wild-type 4AB (1:2) proteins. The dependence of the dNTPase activities on the concentration was hyperbolic, suggesting single or noncooperative binding sites, whereas ATPase activity was sigmoidal, suggesting more than one ATP binding site. The k(cat)/Km ratios for hydrolysis of the dNTPs by the four protein preparations were within a factor of 6 of each other. The 1:1 mixture of 4A'B had the highest k(cat)/Km ratios, with a preference for dATP and dTTP.

Highlights

  • Steadystate kcetand K,values for hydrolysis of the nucleoside triphosphates ATP, dATP, dTTP, and dGTP were measured for 4A‘, 4B, 4A’B (l:l)a,nd wild-type 4AB (1:2) proteins

  • Toinitiate lagging strand DNA synthesis the polymerase relies on the primase protein that synthesizes RNA primers which are elongated to form

  • In eucaryotes that have two different DNA polymerases responsible for leading and lagging strand DNA synthesis, the primase protein is closely associated with the DNA polymerase catalyzing the lagging strand DNA synthesis

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Summary

EVIDENCE FOR HOMODIMER AND HETERODIMER FORMATION*

DNA unwinding is facilitated by the DNA-dependent NTPase activity of the gene 4 proteins; the preferred NTP substrate of the gene 4 proteins has been reported as dTTP (Matson andRichardson, 1983).In addition to the helicase activity, the 4AB mixture synthesizes tetraribonucleotide primers pppACCC and pppACAC at specific sites on single-stranded DNA. These primers are elongated by T7 DNA polymerase during lagging strand DNA.

Mechanistic studies of the helicase and primase activities
RESULTS
TABLEI Percentages and migration distancesof different species
DISCUSSION
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